Bilayer-thickness-mediated interactions between integral membrane proteins.
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Summary
The work presented here puts into place an analytic and numerical framework which allows calculation of bilayer-mediated elastic interactions between integral membrane proteins for the complicated protein shapes suggested by structural biology and at the small protein separations most relevant for the crowded membrane environments provided by living cells.
- Type
- article
- Published
- 2016-04-18
- Cited by
- 29
- References
- 160
- Access
- Open access
- OpenAlex
- https://openalex.org/W27176332
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:3886465
Keywords
Wind tunnel, Aerodynamics, Flutter, Chord (peer-to-peer), Deflection (physics)
References
- Theoretical analysis of protein organization in lipid membranes.
- Membrane-protein interactions in mechanosensitive channels.
- Bilayer-mediated clustering and functional interaction of MscL channels.
- Energy and Finite Element Methods in Structural Mechanics
- Cell Model Approach to Membrane Mediated Protein Interactions(Frontiers in Nonequilibrium Physics-Fundamental Theory, Glassy & Granular Materials, and Computational Physics-)
- IL-13受体α2降低血吸虫病肉芽肿的炎症反应并延长宿主存活时间[英]/Mentink-Kane MM,Cheever AW,Thompson RW,et al//Proc Natl Acad Sci U S A
- Membrane inclusions as coupled harmonic oscillators: effects due to anisotropic membrane slope relaxation.
- Membrane-induced interactions between inclusions
- Brownian dynamics simulation of the lateral distribution of charged membrane components
- Feeling the hidden mechanical forces in lipid bilayer is an original sense
- The Effective Field Theory approach towards membrane-mediated interactions between particles.
- Attractive asymmetric inclusions in elastic membranes under tension: cluster phases and membrane invaginations
- Mechanosensitivity is mediated directly by the lipid membrane in TRAAK and TREK1 K+ channels
- Fluctuation-induced forces between inclusions in a fluid membrane under tension.
- Lipids do influence protein function-the hydrophobic matching hypothesis revisited.
- Bilayer Elasticity at the Nanoscale: The Need for New Terms
- Stabilization of ion channels due to membrane-mediated elastic interaction
- Amphiphile regulation of ion channel function by changes in the bilayer spring constant
- Configurations of fluid membranes and vesicles
- Experimental support for tilt-dependent theory of biomembrane mechanics.
Cited by
- Simulations of CYP51A from Aspergillus fumigatus in a model bilayer provide insights into triazole drug resistance
- Thermodynamic competition between membrane protein oligomeric states
- Nano- and microparticles at fluid and biological interfaces
- On differentiability of the membrane-mediated mechanical interaction energy of discrete–continuum membrane–particle models
- Effects of geometrical structure on spatial distribution of thermal energy in two-dimensional triangular lattices
- Directed Supramolecular Organization of N-BAR Proteins through Regulation of H0 Membrane Immersion Depth
- Membrane Curvature and Tension Control the Formation and Collapse of Caveolar Superstructures.
- Supramolecular organization of membrane proteins with anisotropic hydrophobic thickness.
- The plasma membrane as a mechanochemical transducer
- Probing the complex interaction between the pH-low insertion peptide and membrane bilayers
- Elastic multipole method for describing linear deformation of infinite 2D solid structures with circular holes and inclusions
- Interaction between mechanosensitive channels embedded in lipid membrane.
- Annexin B12 Trimer Formation is Governed by a Network of Protein-Protein and Protein-Lipid Interactions
- Method of image charges for describing linear deformation of bounded 2D solid structures with circular holes and inclusions
- A peridynamic approach to computation of elastic and entropic interactions of inclusions on a lipid membrane
- Image charges for deformed 2D solid structures with circular holes and inclusions
- Regulation of membrane proteins through local heterogeneity in lipid bilayer thickness.
- A continuum membrane model predicts curvature sensing by helix insertion
- Membrane-Mediated Interactions Between Protein Inclusions
- Membrane-mediated protein interactions drive membrane protein organization
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